Dry air is a pretty decent insulator; it has a very high resistivity of 3×10^130 •m. Consider a capacitor that has square plates 15 cm on a side, separated by 0.8 mm of dry air. The capacitor is charged such that it has a potential of 320 V hotwoon the platos
Dry air is a pretty decent insulator; it has a very high resistivity of 3×10^130 •m. Consider a capacitor that has square plates 15 cm on a side, separated by 0.8 mm of dry air. The capacitor is charged such that it has a potential of 320 V hotwoon the platos
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![Dry air is a pretty decent insulator; it has a very
high resistivity of 3x10^1302 m. Consider a
capacitor that has square plates 15 cm on a side,
separated by 0.8 mm of dry air. The capacitor is
charged such that it has a potential of 320 V
between the plates.
1. First, what is the resistance of the volume of
air between the plates in GS2 (to 3 significant
digits)?
2. What is the capacitance of this capacitor (in pF
to 3 significant digits)?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc06f83d5-6955-43da-b8fb-32054186bd2f%2F25883c7a-13d4-4dde-9045-995f827e6d42%2Facl6bxw_processed.png&w=3840&q=75)
Transcribed Image Text:Dry air is a pretty decent insulator; it has a very
high resistivity of 3x10^1302 m. Consider a
capacitor that has square plates 15 cm on a side,
separated by 0.8 mm of dry air. The capacitor is
charged such that it has a potential of 320 V
between the plates.
1. First, what is the resistance of the volume of
air between the plates in GS2 (to 3 significant
digits)?
2. What is the capacitance of this capacitor (in pF
to 3 significant digits)?
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